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sunfluidh:species_properties_namelist

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sunfluidh:species_properties_namelist [2016/10/04 21:14] yannsunfluidh:species_properties_namelist [2016/10/08 16:34] – [List of variable and definition] yann
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 ===== Namelist "Species_Properties" ===== ===== Namelist "Species_Properties" =====
  
-==== List of variable and definition ====+
 This data setup is only used in the full version of sunfluidh for the simulation of multi-species gas flows under low-Mach number hypothesis. This data setup is only used in the full version of sunfluidh for the simulation of multi-species gas flows under low-Mach number hypothesis.
 It is used to define every thermo-chemical properties of species to estimate physical properties of gas mixture such as heat capacity, thermal conductivity, transport coefficients of diffusion, .... It is used to define every thermo-chemical properties of species to estimate physical properties of gas mixture such as heat capacity, thermal conductivity, transport coefficients of diffusion, ....
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 ----- -----
  
-=== Species_Name (type = character string (6)) ===+==== Species_Name (type = character string (6)) ====
  
    * Name of the species present in the gas mixture    * Name of the species present in the gas mixture
  
-=== Species_molecular_Mass (type = real) ===+==== Species_molecular_Mass (type = real) ====
  
    * Molecular mass (mol/kg)    * Molecular mass (mol/kg)
  
-=== Reference_Molecular_Heat_Capacity (type = real) ===+==== Reference_Molecular_Heat_Capacity (type = real) ====
  
    * Species heat capacity (J/K/kg)    * Species heat capacity (J/K/kg)
  
-=== Schmidt_Number (type = real) ===+==== Schmidt_Number (type = real) ====
  
    * The Schmidt number $Sch$ is used to define the diffusion coefficient of the species from the kinematic viscosity as $D_i=\nu/Sch$. This definition is enabled only when the data "Multi_Species_Mixture_Law_for_Mass_Diffusion_Enabled = .false." (coming from the namelist "Fluid_Properties".    * The Schmidt number $Sch$ is used to define the diffusion coefficient of the species from the kinematic viscosity as $D_i=\nu/Sch$. This definition is enabled only when the data "Multi_Species_Mixture_Law_for_Mass_Diffusion_Enabled = .false." (coming from the namelist "Fluid_Properties".
  
-=== Electric_Charge  (type = real) ===+==== Electric_Charge  (type = real) ===
 + 
 +   * Electric charge of the ionized species in electronic unit 
 +   * Used only if chemical reactions are implied 
 + 
 +==== Lennard_Jones_Diameter (type = real) ==== 
 + 
 +   * Diameter of Lennard-Jones (m) 
 + 
 +==== Lennard_Jones_Potential (type = real) ==== 
 + 
 +   * Potential of Lennard-Jones (dimensionless) 
  
 +==== Thermochemical_Properties_Coefficients (type = real) ====
  
-=== Lennard_Jones_Diameter (type = real===+   * These coefficients are used to define some physical quantities such as enthalpy, entropy, heat capacity, free enthalpy of species in respect with the temperature. 
 +   * This data setup is an array (7,2, The first dimension corresponds to the number of coefficients considered (here 7) and the second to the number of temperature ranges considered (here 2). 
 +     * The 1st range of T is  300K ---> 1000K 
 +     * The 2nd range of T is 1000K ---> 5000K 
 +   * Used only if chemical reactions are implied
  
-=== Lennard_Jones_Potential (type real) === +==== End_of_Data_Block (type= boolean) ====
-=== Lennard_Jones_Potential (type = real) === +
-=== Thermochemical_Properties_Coefficients (type = real) ===+
  
-=== End_of_Data_Block (type= boolean) ===+   * Specify the end of the data setup constituted by one or several namelist "Species_Properties".
sunfluidh/species_properties_namelist.txt · Dernière modification : 2016/11/28 17:40 de yann

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